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首页> 外文期刊>Journal of Materials Processing Technology >Controlling thermal deformation using a heat sink in laser transformation hardening of steel sheets
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Controlling thermal deformation using a heat sink in laser transformation hardening of steel sheets

机译:在钢板的激光相变硬化中使用散热器控制热变形

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摘要

Experiments were conducted using a 3 kW diode laser on 2 mm thick boron steel and DP 590 dual phase steel specimens, and four types of heat sink were considered: stainless steel 316, steel, and copper, and no heat sink. Deflection angles were measured and microstructure distributions were analyzed. When a heat sink is used, thermal deformation can be significantly reduced to the point where the direction of deflection can be reversed, and a zero deflection regime exists between the two different deflection regimes. Two different thermal deformation mechanisms are involved, plastic deformation and deformation due to martensitic phase transformation, and between them a transition regime exists. Thermal deformation in not only the laser transformation hardening process but also general laser-based sheet metal manufacturing processes can be effectively controlled. (C) 2014 Elsevier B.V. All rights reserved.
机译:使用3 kW二极管激光器对2 mm厚的硼钢和DP 590双相钢试样进行了实验,并考虑了四种散热器:不锈钢316,钢和铜,并且没有散热器。测量偏转角并分析微观结构分布。当使用散热器时,可以将热变形显着减小到偏转方向可以反转的程度,并且在两个不同的偏转状态之间存在零偏转状态。涉及两种不同的热变形机制,塑性变形和由于马氏体相变引起的变形,它们之间存在过渡态。不仅可以有效地控制激光相变硬化过程中的热变形,而且可以有效地控制一般的基于激光的钣金制造过程中的热变形。 (C)2014 Elsevier B.V.保留所有权利。

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